Department of Biochemistry, Microbiology and Biotechnology, Rhodes University, PO Box 94, Grahamstown, 6140, South Africa.
Biotechnol Adv. 2012 Nov-Dec;30(6):1458-80. doi: 10.1016/j.biotechadv.2012.03.002. Epub 2012 Mar 13.
Lignocellulose is a complex substrate which requires a variety of enzymes, acting in synergy, for its complete hydrolysis. These synergistic interactions between different enzymes have been investigated in order to design optimal combinations and ratios of enzymes for different lignocellulosic substrates that have been subjected to different pretreatments. This review examines the enzymes required to degrade various components of lignocellulose and the impact of pretreatments on the lignocellulose components and the enzymes required for degradation. Many factors affect the enzymes and the optimisation of the hydrolysis process, such as enzyme ratios, substrate loadings, enzyme loadings, inhibitors, adsorption and surfactants. Consideration is also given to the calculation of degrees of synergy and yield. A model is further proposed for the optimisation of enzyme combinations based on a selection of individual or commercial enzyme mixtures. The main area for further study is the effect of and interaction between different hemicellulases on complex substrates.
木质纤维素是一种复杂的基质,需要多种酶协同作用才能完全水解。为了设计用于不同预处理的不同木质纤维素基质的最佳酶组合和比例,已经研究了这些不同酶之间的协同作用。本综述考察了降解木质纤维素各种成分所需的酶,以及预处理对木质纤维素成分和降解所需酶的影响。许多因素会影响酶和水解过程的优化,例如酶比、底物负荷、酶负荷、抑制剂、吸附和表面活性剂。还考虑了协同作用和产率的计算。还进一步提出了基于选择单个或商业酶混合物的酶组合优化模型。进一步研究的主要领域是不同半纤维素酶对复杂基质的作用和相互作用。